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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Structural analysis of Cu(II) ligation to the 5'-GMP nucleotide by pulse EPR spectroscopy
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Structural analysis of Cu(II) ligation to the 5'-GMP nucleotide by pulse EPR spectroscopy

机译:脉冲EPR光谱分析Cu(II)与5'-GMP核苷酸的连接结构

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摘要

Simple copper salts are known to denature poly d(GC). On the other hand, copper complexes of substituted 1,4,7,10,13-pentaazacyclohexadecane-14,16-dione are able to convert the right-handed B form of the same DNA sequence to the corresponding left-handed Z form. A research program was started in order to understand why Cu(II) as an aquated ion melts DNA and induces the conformational change to Z-DNA in the form of an azamacrocyclic complex. In this paper, we present a continuous wave and pulse electron paramagnetic resonance study of the mononucleotide model system Cu(II)-guanosine 5'-monophosphate . Pulse EPR methods like electron-nuclear double resonance and hyperfine sublevel correlation spectroscopy provide unique information about the electronic and geometric structure of this model system through an elaborate mapping of the hyperfine and nuclear quadrupole interactions between the unpaired electron of the Cu(II) ion and the magnetic nuclei of the nucleotide ligand. It was found that the Cu(II) ion is directly bound to N7 of guanosine 5'-monophosphate and indirectly bound via a water of hydration to a phosphate group. This set of experiments opens the way to more detailed structural characterization of specifically bound metal ions in a variety of nucleic acids of biological interest, in particular to understand the role of the metal-(poly)nucleotide interaction.
机译:已知简单的铜盐会使聚d(GC)变性。另一方面,取代的1,4,7,10,13-五氮杂环十六烷-14,16-二酮的铜配合物能够将相同DNA序列的右手B形式转化为相应的左手Z形式。为了理解为什么Cu(II)作为水合离子会融化DNA并以氮杂大环配合物的形式诱导Z-DNA的构象变化,开始了一项研究计划。在本文中,我们提出了单核苷酸模型系统Cu(II)-鸟苷5'-单磷酸酯的连续波和脉冲电子顺磁共振研究。脉冲EPR方法(如电子核双共振和超精细亚级相关光谱法)通过精心绘制了Cu(II)离子与未成对电子之间的超精细和核四极相互作用的详细映射,提供了有关此模型系统的电子和几何结构的独特信息。核苷酸配体的核。发现Cu(II)离子直接结合到鸟苷5'-单磷酸的N7上,并通过水合水间接结合到磷酸基上。这组实验为在生物学上感兴趣的各种核酸中特异性结合的金属离子的更详细的结构表征开辟了道路,特别是了解了金属-(多)核苷酸相互作用的作用。

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